Plant Comparison
Meadowsweet vs Corn Silk
A side-by-side comparison of two medicinal plants — every documented constituent, action, use, safety note and cited source, assembled automatically from the Omnia Sana database.
At a glance
Meadowsweet and Corn Silk: they share 8 indicated uses (arthritis / joint pain, cancer (anticancer research), infection (general), …); 4 pharmacological actions in common.
Evidence face-off — shared uses
| Condition | Meadowsweet | Corn Silk | Verdict |
|---|---|---|---|
| Arthritis / joint pain | 1/10 | 1/10 | Comparable evidence |
| Cancer (anticancer research) | 2/10 | 2/10 | Comparable evidence |
| Infection (general) | 1/10 | 1/10 | Comparable evidence |
| Inflammation (general) | 1/10 | 1/10 | Comparable evidence |
| Skin irritation | 1/10 | 1/10 | Comparable evidence |
| Swelling / fluid retention | 1/10 | 1/10 | Comparable evidence |
| Urinary support | 1/10 | 1/10 | Comparable evidence |
| Urinary tract infection (UTI) | 1/10 | 1/10 | Comparable evidence |
Evidence scores (1–10) are computed from the tier of each cited source. “Comparable” means the two scores are within one point. Follow a score to its detailed sources.
Key Constituents
Historically the source of aspirin's chemical inspiration; provide the plant's analgesic and anti-inflammatory activity, buffered by co-occurring mucilage and tannins.
Antioxidant constituents contributing to the plant's anti-inflammatory and gastroprotective effects.
Contribute to astringency and the characteristic sweet almond-like fragrance.
Major antioxidant constituents of corn silk; maysin is the predominant flavonoid quantified in standardised extracts.
Contribute to antioxidant and anti-inflammatory activity.
Pharmacological Actions
Traditional & Indicated Uses
inferred from gastroprotective action
inferred from anti-inflammatory action
inferred from anticancer action
inferred from gastroprotective action
inferred from antimicrobial action
inferred from anti-inflammatory action
inferred from antispasmodic action
inferred from antispasmodic action
inferred from anti-inflammatory action
inferred from diuretic action
inferred from diuretic action
inferred from diuretic action
inferred from anti-inflammatory action
inferred from anticancer action
Soothing demulcent for urinary-tract irritation and mild urinary infections; supports kidney function
inferred from anti-inflammatory action
inferred from demulcent action
Diuretic - increases urine output to support the urinary tract and mild fluid retention/swelling; in conscious rats the aqueous extract is diuretic and kaliuretic and modifies glomerular filtration and potassium excretion
inferred from diuretic action
Diuretic - increases urine output to support the urinary tract and mild fluid retention/swelling; in conscious rats the aqueous extract is diuretic and kaliuretic and modifies glomerular filtration and potassium excretion; Soothing demulcent for urinary-tract irritation and mild urinary infections; supports kidney function
Safety, Cautions & Contraindications
Generally safe in normal culinary and medicinal doses. Avoid in salicylate sensitivity or aspirin allergy. Not recommended for children with viral illnesses (Reye's syndrome risk, as with other salicylate-containing plants). Avoid during pregnancy and breastfeeding.
Duke (2002) rates meadowsweet as ++ and notes analgesic, antiulcer, antirheumatic, astringent, and anti-aggregant activities at the experimental level (score 1). The plant is historically significant as a precursor to aspirin — salicylate compounds in meadowsweet were originally used to derive acetylsalicylic acid. Unlike aspirin, meadowsweet's salicylates are combined with protective mucilaginous compounds that may reduce gastric irritation. Duke notes that individuals with aspirin (salicylate) sensitivity should avoid meadowsweet; the plant also has anticoagulant properties that may interact with blood-thinning medications (Duke, 2002).
As a diuretic it should be taken with plenty of fluids; use caution alongside prescription diuretics or medicines that affect potassium.
May lower blood sugar and blood pressure, so use caution with antidiabetic or antihypertensive medication; avoid concentrated medicinal doses in pregnancy - a high-dose standardised extract increased pre-implantation losses in pregnant rats (no fetal malformations were seen).
External Ids
Botanical Description
Tall, moisture-loving perennial herb with pinnately compound leaves, dark green above and whitish-downy beneath, the leaflets sharply toothed. Dense, fluffy, creamy-white flower clusters with a strong, sweet, almond-like fragrance are borne atop reddish, grooved stems.[1]
Tall, robust annual grass with broad, strap-like leaves and a stout, jointed stem. Male flowers form a terminal tassel; female flowers develop on the ear (cob), each floret bearing a single long, silky style and stigma ('corn silk') that protrudes from the husk to catch pollen.[11]
Habitat
Grows in damp meadows, marshes, riverbanks, ditches and wet woodland margins; native to Europe and temperate Asia, favouring moist, nutrient-rich ground.[1]
Cultivated worldwide as a major cereal food crop in warm-temperate to tropical climates on fertile, well-drained soils; not found wild, having been domesticated from a wild grass ancestor (teosinte) in Mesoamerica.[11]
Harvesting
The flowering tops, leaf and stem are cut in summer as the flowers open, when the characteristic salicylate content is highest, and dried in a warm, shaded, airy place.[1]
The silky stigmas and styles are collected from the ears in mid- to late summer, just before or as pollination occurs, while still fresh and pale, then dried quickly to preserve colour and flavonoid content.[11]
Traditional Uses
Meadowsweet is historically significant as the plant from which salicylic acid derivatives (the chemical basis of aspirin) were first isolated, and has long been used in European folk medicine as an anti-inflammatory, analgesic and gastroprotective remedy for feverish colds, rheumatic and joint pain, and digestive complaints such as acid reflux and indigestion - notably, its natural mucilage is thought to buffer the gastric irritation associated with isolated salicylates.[1, 4]
Corn silk has a long traditional use across Chinese, Native American and European folk medicine as a gentle diuretic and soothing demulcent for urinary tract complaints, mild fluid retention and kidney support.[11]
Preparations
Dried flower, leaf and stem infused in hot water as a traditional anti-inflammatory and digestive tea.
Tincture (1:5) of the dried aerial parts; single dose 2-4 ml, daily dose 6-12 ml per the EU herbal monograph. Educational reference only, not a prescription.
Concentrated extract studied in vitro and in vivo for anti-inflammatory and gastroprotective activity.
Dried corn silk infused in hot water as a traditional diuretic and urinary-support tea.
Dosage
The EU herbal monograph gives a single dose of 1.5-6 g of the comminuted herb as an infusion, for a daily dose of 2-18 g, in adults and elderly; a powdered herbal substance at 250-500 mg per dose (250-1500 mg daily) and a 1:5 tincture at 2-4 mL per dose (6-12 mL daily) are also listed. Contraindicated in hypersensitivity to salicylates. For rheumatic-type complaints, not to be used for more than 4 weeks. Not recommended under 18 years. Educational reference only, not a prescription.
Not documented
References
Lookalikes Review
References & Sources
- Samardžić, S., Arsenijević, J., Božić, D., Milenković, M. et al (2017) 'Antioxidant, anti-inflammatory and gastroprotective activity of Filipendula ulmaria (L.) Maxim. and Filipendula vulgaris Moench', Journal of Ethnopharmacology, 213, pp. 132-137. doi:10.1016/j.jep.2017.11.013 Preclinical
https://doi.org/10.1016/j.jep.2017.11.013 - Andonova, T., Muhovski, Y., Apostolova, E., Naimov, S. et al (2024) 'DNA-Protective, Antioxidant and Anti-Carcinogenic Potential of Meadowsweet (Filipendula ulmaria) Dry Tincture', Antioxidants (Basel), 13(10), pp. 1200. doi:10.3390/antiox13101200 Preclinical
https://doi.org/10.3390/antiox13101200 - Van der Auwera, A., Peeters, L., Foubert, K., Piazza, S. et al (2023) 'In Vitro Biotransformation and Anti-Inflammatory Activity of Constituents and Metabolites of Filipendula ulmaria', Pharmaceutics, 15(4), pp. 1291. doi:10.3390/pharmaceutics15041291 Preclinical
https://doi.org/10.3390/pharmaceutics15041291 - Katanic, J., Boroja, T., Mihailovic, V., Nikles, S., Pan, S., Rosic, G., Selakovic, D., Joksimovic, J., Mitrovic, S. and Bauer, R (2016) 'In vitro and in vivo assessment of meadowsweet (Filipendula ulmaria) as anti-inflammatory agent', Journal of Ethnopharmacology, 193, pp. 627-636. doi:10.1016/j.jep.2016.10.015 Preclinical
https://doi.org/10.1016/j.jep.2016.10.015 - Samardzic, S., Tomic, M., Pecikoza, U., Stepanovic-Petrovic, R. and Maksimovic, Z (2016) 'Antihyperalgesic activity of Filipendula ulmaria (L.) Maxim. and Filipendula vulgaris Moench in a rat model of inflammation', Journal of Ethnopharmacology, 193, pp. 652-656. doi:10.1016/j.jep.2016.10.024 Preclinical
https://doi.org/10.1016/j.jep.2016.10.024 - Katanic, J., Matic, S., Pferschy-Wenzig, E., Kretschmer, N., Boroja, T., Mihailovic, V., Stankovic, V., Stankovic, N., Mladenovic, M., Stanic, S., Mihailovic, M. and Bauer, R (2016) 'Filipendula ulmaria extracts attenuate cisplatin-induced liver and kidney oxidative stress in rats: In vivo investigation and LC-MS analysis', Food and Chemical Toxicology, 99, pp. 86-102. doi:10.1016/j.fct.2016.11.018 Preclinical
https://doi.org/10.1016/j.fct.2016.11.018 - Arsenijevic, N., Selakovic, D., Katanic Stankovic, J.S., Mihailovic, V., Mitrovic, S., Milenkovic, J., Milanovic, P., Vasovic, M., Nikezic, A., Milosevic-Djordjevic, O., Zivanovic, M., Filipovic, N., Jakovljevic, V., Jovicic, N. and Rosic, G (2021) 'Variable neuroprotective role of Filipendula ulmaria extract in rat hippocampus', Journal of Integrative Neuroscience, 20(4), pp. 871-883. doi:10.31083/j.jin2004089 Preclinical
https://doi.org/10.31083/j.jin2004089 - Matic, S., Katanic, J., Stanic, S., Mladenovic, M., Stankovic, N., Mihailovic, V. and Boroja, T (2015) 'In vitro and in vivo assessment of the genotoxicity and antigenotoxicity of the Filipendula hexapetala and Filipendula ulmaria methanol extracts', Journal of Ethnopharmacology, 174, pp. 287-292. doi:10.1016/j.jep.2015.08.025 Preclinical
https://doi.org/10.1016/j.jep.2015.08.025 - Pannakal, S.T., Eilstein, J., Hubert, J., Kotland, A., Prasad, A., Gueguiniat-Prevot, A., Juchaux, F., Beaumard, F., Seru, G., John, S. and Roy, D (2023) 'Rapid Chemical Profiling of Filipendula ulmaria Using CPC Fractionation, 2-D Mapping of 13C NMR Data, and High-Resolution LC-MS', Molecules, 28(17), pp. 6349. doi:10.3390/molecules28176349 Preclinical
https://doi.org/10.3390/molecules28176349 - Valle, M.G., Nano, G.M. and Tira, S (1988) 'The Essential Oil of Filipendula ulmaria', Planta Medica, 54(2), pp. 181-182. doi:10.1055/s-2006-962390 Preclinical
https://doi.org/10.1055/s-2006-962390 - Popowski, D., Zentek, J., Piwowarski, J.P. and Granica, S (2021) 'Gut Microbiota of Pigs Metabolizes Extracts of Filipendula ulmaria and Orthosiphon aristatus - Herbal Remedies Used in Urinary Tract Disorders', Planta Medica, 88(3-04), pp. 254-261. doi:10.1055/a-1647-2866 Preclinical
https://doi.org/10.1055/a-1647-2866 - Bespalov, V.G., Alexandrov, V.A., Semenov, A.L., Kovan'ko, E.G., Ivanov, S.D., Vysochina, G.I., Kostikova, V.A. and Baranenko, D.A (2016) 'The inhibitory effect of meadowsweet (Filipendula ulmaria) on radiation-induced carcinogenesis in rats', International Journal of Radiation Biology, 93(4), pp. 394-401. doi:10.1080/09553002.2016.1257834 Preclinical
https://doi.org/10.1080/09553002.2016.1257834 - European Medicines Agency (HMPC) (2011) 'Community herbal monograph on Filipendula ulmaria (L.) Maxim., herba'. Available at: https://www.ema.europa.eu/en/documents/herbal-monograph/final-community-herbal-monograph-filipendula-ulmaria-l-maxim-herba-first-version_en.pdf Traditional / reference
https://www.ema.europa.eu/en/documents/herbal-monograph/final-community-herbal-monograph-filipendula-ulmaria-l-maxim-herba-first-version_en.pdf - Bridge, J (2008) 'The Herbal Remedy Handbook'. Traditional / reference
https://scholar.google.com/scholar?q=The%20Herbal%20Remedy%20Handbook - Drummond, E.M., Harbourne, N., Marete, E., Jacquier, J.C., O'Riordan, D. and Gibney, E.R (2013) 'Inhibition of pro-inflammatory biomarkers in THP1 macrophages by polyphenols derived from chamomile, meadowsweet and willow bark', 27(4), pp. 588--594. Traditional / reference
https://scholar.google.com/scholar?q=Inhibition%20of%20pro-inflammatory%20biomarkers%20in%20THP1%20macrophages%20by%20polyphenols%20derived%20from%20chamomile%2C%20meadowsweet%20and%20willow%20bark - Grieve, M (1931) 'A Modern Herbal'. Traditional / reference
https://scholar.google.com/scholar?q=A%20Modern%20Herbal - Duke, J.A (2002) 'Handbook of Medicinal Herbs, Second Edition'. Traditional / reference
https://scholar.google.com/scholar?q=Handbook%20of%20Medicinal%20Herbs%2C%20Second%20Edition
- Zhang, Y., Wu, L., Ma, Z., Cheng, J. and Liu, J (2018) 'Corn silk (Zea mays L.), a source of natural antioxidants with alpha-amylase, alpha-glucosidase, advanced glycation and diabetic nephropathy inhibitory activities', Biomedicine & Pharmacotherapy, 110, pp. 510-517. doi:10.1016/j.biopha.2018.11.126 Preclinical
https://doi.org/10.1016/j.biopha.2018.11.126 - Wang, Y. and others (2023) 'Corn Silk Flavonoids Ameliorate Hyperuricemia via PI3K/AKT/NF-kappaB Pathway', Journal of Agricultural and Food Chemistry, 71(26), pp. 9968-9979. doi:10.1021/acs.jafc.3c03422 Preclinical
https://doi.org/10.1021/acs.jafc.3c03422 - Habtemariam, S (1998) 'Extract of corn silk (stigma of Zea mays) inhibits the tumour necrosis factor-alpha- and bacterial lipopolysaccharide-induced cell adhesion and ICAM-1 expression', Planta Medica, 64(4), pp. 314-318. doi:10.1055/s-2006-957441 Preclinical
https://doi.org/10.1055/s-2006-957441 - Chen, M.Y., Wu, J.M. and others (2025) 'Unlocking Corn Silk's Potential: Bioactive Compounds Targeting Age-Related Diseases', Molecular Nutrition & Food Research, 69(10), pp. e70117. doi:10.1002/mnfr.70117 Meta-analysis / review
https://doi.org/10.1002/mnfr.70117 - Li, Y. and others (2023) 'Diterpenoid and phenolic constituents from corn silk (Zea mays) with PTP1B inhibitory activity', Natural Product Research, 37(24), pp. 4189-4196. doi:10.1080/14786419.2023.2265038 Preclinical
https://doi.org/10.1080/14786419.2023.2265038 - Wang, B. and others (2019) 'Corn Silk (Zea mays) Induced Apoptosis in Human Breast Cancer (MCF-7) Cells via the ROS-Mediated Mitochondrial Pathway', Oxidative Medicine and Cellular Longevity, 2019, pp. 9789241. doi:10.1155/2019/9789241 Preclinical
https://doi.org/10.1155/2019/9789241 - Guo, J. and others (2024) 'Extraction, purification, structural characteristics, and pharmacological activities of the polysaccharides from corn silk: A review', International Journal of Biological Macromolecules, 274, pp. 133433. doi:10.1016/j.ijbiomac.2024.133433 Meta-analysis / review
https://doi.org/10.1016/j.ijbiomac.2024.133433 - Li, X. and others (2025) 'Ultrasound-assisted extraction of anti-inflammatory actives from corn silk (Zea mays L.): Process optimization, machine learning screening, and interaction mechanisms', Ultrasonics Sonochemistry, 118, pp. 107420. doi:10.1016/j.ultsonch.2025.107420 Preclinical
https://doi.org/10.1016/j.ultsonch.2025.107420 - Wang, Y. and others (2024) 'An Umbrella Insight into the Phytochemistry Features and Biological Activities of Corn Silk: A Narrative Review', Molecules, 29(4), pp. 891. doi:10.3390/molecules29040891 Meta-analysis / review
https://doi.org/10.3390/molecules29040891 - Zhang, W. and others (2023) 'Acidic polysaccharide from corn silk: Structural & conformational properties and hepatoprotective activity', International Journal of Biological Macromolecules, 237, pp. 123851. doi:10.1016/j.ijbiomac.2023.123851 Preclinical
https://doi.org/10.1016/j.ijbiomac.2023.123851 - Hasanudin, K., Hashim, P. and Mustafa, S (2012) 'Corn Silk (Stigma Maydis) in Healthcare: A Phytochemical and Pharmacological Review', Molecules. doi:10.3390/molecules171112937 Traditional / reference
https://doi.org/10.3390/molecules171112937 - Caixeta, G.A.B. and dos Santos Reis, D. and Soares, K.I. and de Brito Ramos, I. and Mendes, G.H.L. and others (2025) 'Toxicological Assessment of a Standardized Dry Extract of Zea mays L. (Poaceae) Stigmas During Gestation: Effects on Maternal Parameters and Fetal Outcomes in Wistar Rats', Birth Defects Research, 117(9). doi:10.1002/bdr2.2526 Traditional / reference
https://doi.org/10.1002/bdr2.2526 - Velazquez, D.V.O. and Xavier, H.S. and Batista, J.E.M. and de Castro-Chaves, C (2005) 'Zea mays L. extracts modify glomerular function and potassium urinary excretion in conscious rats', Phytomedicine, 12(5), pp. 363--369. doi:10.1016/j.phymed.2003.12.010 Traditional / reference
https://doi.org/10.1016/j.phymed.2003.12.010
Generated automatically from the Omnia Sana plant database and its cited sources. For educational purposes only — not medical advice. Always consult a qualified practitioner before using medicinal plants.